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설계변수의 공차를 고려한 구조물의 강건 최적설계

Robust Structural Optimization Considering the Tolerances of Design Variables

  • 이권희 (한양대학교 대학원 기계설계학과) ;
  • 박경진 (한양대학교 기계공학과)
  • Lee, Gwon-Hui (Dept. of Mechanical Design, Graduate School of Hanyang University) ;
  • Park, Gyeong-Jin (Dept. of Mechanical Engineering, Hanyang University)
  • 발행 : 1997.01.01

초록

The optimization techniques have been applied to versatile engineering problems for reducing manufacturing cost and for automatic design. The deterministic approaches or op5imization neglect the effects on uncertainties of design variables. The uncertainties include variation or perturbation such as tolerance band. The optimum may be useless when the constraints considering worst cases of design variables can not be satisfied, which results from constraint variation. The variation of design variables can also give rise to drastic change of performances. The two issues are related to constraint feasibility and insensitive performance. Robust design suggested in the present study is developed to gain an optimum insensitive to variation on design variables within feasible region. The multiobjective function is composed to the mean and the standard deviation of original objective function, while the constraints are supplemented by adding penalty term to original constraints. This method has a advantage that the second derivatives of the constraints are not required. A mathematical problem and several standard problems for structural optimization are solved to check out the usefulness of the suggested method.

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